首页> 外文期刊>The FEBS journal >Octaketide-producing type III polyketide synthase from Hypericum perforatum is expressed in dark glands accumulating hypericins.
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Octaketide-producing type III polyketide synthase from Hypericum perforatum is expressed in dark glands accumulating hypericins.

机译:来自贯叶连翘的产生八肽的III型聚酮化合物合酶在积累有贯叶连翘的暗腺中表达。

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Hypericins are biologically active constituents of Hypericum perforatum (St John's wort). It is likely that emodin anthrone, an anthraquinone precursor of hypericins, is biosynthesized via the polyketide pathway by type III polyketide synthase (PKS). A PKS from H. perforatum, HpPKS2, was investigated for its possible involvement in the biosynthesis of hypericins. Phylogenetic tree analysis revealed that HpPKS2 groups with functionally divergent non-chalcone-producing plant-specific type III PKSs, but it is not particularly closely related to any of the currently known type III PKSs. A recombinant HpPKS2 expressed in Escherichia coli resulted in an enzyme of approximately 43 kDa. The purified enzyme catalysed the condensation of acetyl-CoA with two to seven malonyl-CoA to yield tri- to octaketide products, including octaketides SEK4 and SEK4b, as well as heptaketide aloesone. Although HpPKS2 was found to have octaketide synthase activity, production of emodin anthrone, a supposed octaketide precursor of hypericins, was not detected. The enzyme also accepted isobutyryl-CoA, benzoyl-CoA and hexanoyl-CoA as starter substrates producing a variety of tri- to heptaketide products. In situ RNA hybridization localized the HpPKS2 transcripts in H. perforatum leaf margins, flower petals and stamens, specifically in multicellular dark glands accumulating hypericins. Based on our results, HpPKS2 may have a role in the biosynthesis of hypericins in H. perforatum but some additional factors are possibly required for the production of emodin anthrone in vivo.
机译:金丝桃素是贯叶连翘的生物活性成分(圣约翰草)。大黄素的蒽醌前体大黄素蒽酮很可能是通过III型聚酮化合物合酶(PKS)通过聚酮途径生物合成的。研究了贯叶连翘的PKS HpPKS2可能参与金丝桃素的生物合成。系统发育树分析表明,HpPKS2具有功能上不同的非查尔酮的植物特异性III型PKS,但它与任何当前已知的III型PKS都不特别相关。在大肠杆菌中表达的重组HpPKS2产生约43 kDa的酶。纯化的酶催化乙酰辅酶A与2至7个丙二酰辅酶A缩合,生成三肽至八肽产品,包括八肽SEK4和SEK4b以及七肽芦荟酮。尽管发现HpPKS2具有八肽合酶活性,但未检测到大黄素蒽酮(一种金丝桃素的八肽前体)。该酶还接受异丁酰基-CoA,苯甲酰基-CoA和己酰基-CoA作为起始底物,产生各种三至七肽产品。原位RNA杂交将HpPKS2转录本定位在贯叶连翘叶缘,花瓣和雄蕊中,特别是在积累金丝桃素的多细胞暗腺中。根据我们的结果,HpPKS2可能在贯叶连翘中金丝桃素的生物合成中起作用,但体内产生大黄素蒽酮可能需要一些其他因素。

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